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Development of a stream function-upper bound analysis applicable to the process of plate rolling

机译:开发适用于中厚板轧制过程的流函数上限分析

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Purpose - The purpose of this paper is to develop a mathematical solution to estimate the deformation pattern and required power in cold plate rolling using coupled stream function method and upper bound theorem. Design/methodology/approach - In the first place, an admissible velocity field and the geometry of deformation zone are derived from a new stream function. Then, the optimum velocity field is obtained by minimizing the corresponding power function. Also, to calculate the adiabatic heating during high speed rolling operations, a two-dimensional conduction-convection problem is sequentially coupled with the mechanical model. To verify the predictions, rolling experiments on aluminum plates are conducted and also, a finite element analysis is performed by Abaqus/Explicit. The predicted deformation zone is then compared with the experimentally measured region as well as with the results of the finite element analysis. Findings - The results show that the predicted deformation zone and the temperature distribution fit reasonably with the experimental data while much lower computational cost needs comparing to the fully finite element analysis. Originality/value - A new stream function is proposed to properly describe the velocity field and deformation pattern during plate rolling considering the neutral point. Furthermore, the employed algorithm can be simply coupled with the thermal finite element analysis.
机译:目的-本文的目的是使用耦合流函数方法和上限定理开发一种数学解决方案,以估算冷轧板的变形模式和所需功率。设计/方法/方法-首先,从新的流函数中得出允许的速度场和变形区的几何形状。然后,通过最小化相应的幂函数来获得最佳速度场。而且,为了计算高速轧制操作期间的绝热加热,将二维传导-对流问题顺序地与机械模型耦合。为了验证预测结果,在铝板上进行了轧制实验,此外,Abaqus / Explicit进行了有限元分析。然后将预测的变形区域与实验测量的区域以及有限元分析的结果进行比较。结果-结果表明,预测的变形区和温度分布与实验数据合理匹配,而与完全有限元分析相比,计算成本要低得多。原创性/价值-提出了一种新的流函数,以在考虑中性点的情况下正确描述板轧制过程中的速度场和变形模式。此外,所采用的算法可以简单地与热有限元分析结合起来。

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